Hajime Ohno
Biographic Data
| ID | 4873690 |
|---|---|
| NAME | Hajime Ohno |
| GIVEN NAMES | Hajime |
| FAMILY NAME | Ohno |
| SIGNATURE | OHNO H |
| AFFILIATIONS | Department of Chemical Engineering, Graduate School of Engineering Tohoku University Sendai Miyagi Japan |
| ORCID | 0000-0002-8826-3854 |
| VERIFIED | Yes |
| TOTAL WORKS | 3 |
| TOTAL CITATIONS | 16 |
| AUTHOR COUNT | 3 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2014 |
| LATEST PUBLICATION YEAR | 2022 |
| H-INDEX | 1 |
Toward an efficient recycling system: Evaluating recyclability of end‐of‐life stainless steels by considering elements distribution during a remelting process
Stainless steel is a special category of steel and contains high chromium and nickel. With particular attention to chromium and nickel, the solvent metal phase of recycling of end‐of‐life (EoL) ferritic and austenitic stainless steels by remelting is considered Fe–Cr alloy and Fe–Cr–Ni alloy instead of pure iron, respectively. Understanding the element elimination behavior from the solvent metal phase during the remelting process is important for…
Evaluating the global impact of low-carbon energy transitions on social equity
Unintentional Flow of Alloying Elements in Steel during Recycling of End‐of‐Life Vehicles
Alloying elements in steel add a wide range of valuable properties to steel materials that are indispensable for the global economy. However, they are likely to be effectively irretrievably blended into the steel when recycled because of (among other issues) the lack of information about the composition of the scrap. This results in the alloying elements dissipating in slag during steelmaking and/or becoming contaminants in secondary steel. We us…
Unintentional Flow of Alloying Elements in Steel during Recycling of End‐of‐Life Vehicles
Alloying elements in steel add a wide range of valuable properties to steel materials that are indispensable for the global economy. However, they are likely to be effectively irretrievably blended into the steel when recycled because of (among other issues) the lack of information about the composition of the scrap. This results in the alloying elements dissipating in slag during steelmaking and/or becoming contaminants in secondary steel. We us…
Evaluating the global impact of low-carbon energy transitions on social equity
Toward an efficient recycling system: Evaluating recyclability of end‐of‐life stainless steels by considering elements distribution during a remelting process
Stainless steel is a special category of steel and contains high chromium and nickel. With particular attention to chromium and nickel, the solvent metal phase of recycling of end‐of‐life (EoL) ferritic and austenitic stainless steels by remelting is considered Fe–Cr alloy and Fe–Cr–Ni alloy instead of pure iron, respectively. Understanding the element elimination behavior from the solvent metal phase during the remelting process is important for…
Extraction and Separation Processes (2 works) · Materials Science (2 works) · Metallurgy (2 works) · Recycling and Waste Management Techniques (2 works) · Alloy (1 works) · Austenite (1 works) · Business (1 works) · Chromium (1 works) · Ecology (1 works) · Economic growth (1 works)